CN210662350U - Building drainage pipe leakproofness monitoring devices - Google Patents

Building drainage pipe leakproofness monitoring devices Download PDF

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Publication number
CN210662350U
CN210662350U CN201921515648.7U CN201921515648U CN210662350U CN 210662350 U CN210662350 U CN 210662350U CN 201921515648 U CN201921515648 U CN 201921515648U CN 210662350 U CN210662350 U CN 210662350U
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CN
China
Prior art keywords
drainage pipe
guide rail
circular guide
pipeline
slider
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201921515648.7U
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Chinese (zh)
Inventor
孙潇晗
赵文豪
陆剑
石志斌
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Zhejiang Project And Engineering Consulting Co ltd
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Zhejiang Project And Engineering Consulting Co ltd
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Priority to CN201921515648.7U priority Critical patent/CN210662350U/en
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Publication of CN210662350U publication Critical patent/CN210662350U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a building drainage pipe tightness monitoring device, which comprises an ultrasonic flaw detector and a pipe sleeve sleeved on a drainage pipe, wherein the pipe sleeve consists of two half-ring bodies which are detachably connected, the front end of each half-ring body is provided with a butted arc-shaped guide rail, the two arc-shaped guide rails are combined to form a circular guide rail, and the circular guide rail is connected with a slide block through a sliding mechanism; slide mechanism is including setting up the live-rollers that just is located the inside and outside both sides of circular guide rail on the slider, the outside of circular guide rail is equipped with to past convex spacing gird, be equipped with on the live-rollers with spacing gird complex annular, be equipped with the test probe who is connected with the ultrasonic flaw detector on the inside wall of slider. The utility model discloses can carry out diversified monitoring to drainage pipe to have better monitoring effect, in addition the utility model discloses still have the characteristics of the operation of being convenient for.

Description

Building drainage pipe leakproofness monitoring devices
Technical Field
The utility model relates to a building technical field, in particular to building drainage pipe leakproofness monitoring devices.
Background
The pipeline is as the means of transmission of gas and liquid to and extensively be used for fields such as life, industry, the pipeline requirement that drainage pipe utilized in transmission process is strict, the pipeline does not reach qualified requirement and may bring very big harm, and the gap on pipeline surface is usually difficult to observe with the naked eye, observe also very inconvenient with the naked eye, need often bow to look over, intensity of labour is very big, because the diameter of pipeline is different in the detection process, it is still inconvenient to survey, consequently, we propose a building drainage pipe leakproofness monitoring devices.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a building drainage pipe leakproofness monitoring devices. The utility model discloses can carry out diversified monitoring to drainage pipe to have better monitoring effect, in addition the utility model discloses still have the characteristics of the operation of being convenient for.
The technical scheme of the utility model: a building drainage pipeline tightness monitoring device comprises an ultrasonic flaw detector and a pipeline sleeve sleeved on a drainage pipeline, wherein the pipeline sleeve consists of two detachably connected semi-ring bodies, the front ends of the semi-ring bodies are provided with arc-shaped guide rails which are butted, the two arc-shaped guide rails are combined to form a circular guide rail, and the circular guide rail is connected with a sliding block through a sliding mechanism; slide mechanism is including setting up the live-rollers that just is located the inside and outside both sides of circular guide rail on the slider, the outside of circular guide rail is equipped with to the convex spacing gird, be equipped with on the live-rollers with spacing gird complex annular, be equipped with the test probe who is connected with the ultrasonic flaw detector on the inside wall of slider, the axle head of live-rollers is equipped with driven gear, be equipped with on the slider with driven gear meshing's driving gear, be equipped with servo motor on the slider, servo motor's output shaft and the end-to-end connection of driving gear.
Among the foretell building drainage pipe leakproofness monitoring devices, detecting probe is connected with the slider through the link, the link is including setting up the first spring telescopic link on the slider lateral wall, the front end of first spring telescopic link is equipped with the touch panel that supports with drainage pipe outer wall, and the outer tip of touch panel is equipped with the recess, detecting probe set up in the recess and with the recess between the lateral wall be equipped with expanding spring.
In the device for monitoring the sealing performance of the drainage pipeline of the building, a plurality of balls are embedded in the outer end face of the contact plate.
In the device for monitoring the sealing performance of the drainage pipeline of the building, the sliding block is connected with a polishing piece in contact with the outer side wall of the drainage pipeline through a second spring telescopic rod.
In the building drainage pipeline tightness monitoring device, the outer side of the circular guide rail is provided with first teeth distributed along the circumferential direction of the circular guide rail, and the rotating roller is provided with second teeth meshed with the first teeth.
In the device for monitoring the sealing performance of the drainage pipeline of the building, one of the semi-ring bodies is connected with a telescopic handle.
In the building drainage pipeline leakproofness monitoring device, be equipped with a plurality of pipeline supporting mechanism that are the annular and distribute on the telescopic inner wall of pipeline, pipeline supporting mechanism is including setting up the third spring telescopic link on the semi-circular inner wall, and the outer tip of third spring telescopic link is equipped with the gyro wheel.
Compared with the prior art, the utility model has the advantages of it is following:
1. the utility model discloses a set up the pipeline sleeve that comprises two dismantlement hemizonids, assemble the pipeline sleeve and make it cover on the drainage pipe that needs monitoring when using, wherein, the front end of hemizonid is equipped with the arcuate guide rail of butt joint, and two arcuate guide rail combinations form circular guide rail, are connected with the slider through slide mechanism on the circular guide rail, be equipped with the test probe who is connected with the ultrasonic flaw detector on the inside wall of slider, wherein, slide mechanism includes the live-rollers that set up on the slider and lie in circular guide rail inside and outside both sides, the outside of circular guide rail is equipped with the spacing ring strip that protrudes to the past, be equipped with the annular with spacing ring strip complex on the live-rollers, can drive the live-rollers rotation through servo motor when using, and then drive the slider along circular guide rail motion, the slider that removes then drives test probe and makes circular motion along drainage pipe, come to carry out omnidirectional detection to drainage pipe, utilize ultrasonic flaw detector to come to detect a flaw to drainage pipe's surface weld seam, compare monitoring effect with the naked eye more to have the characteristics of easily operating.
2. The utility model discloses well test probe is connected with the slider through the link, the link is including setting up the first spring telescopic link on the slider lateral wall, the front end of first spring telescopic link is equipped with the touch panel that supports who contradicts with the drainage pipe outer wall, and the outer tip that supports the touch panel is equipped with the recess, test probe set up in the recess and with the recess between the lateral wall be equipped with expanding spring, under the elastic expansion effect of first spring telescopic link for the drainage pipeline wall that supports touch panel and need monitor closely contradicts, and test probe closely contradicts with the drainage pipeline wall that needs the monitoring under expanding spring's elastic action, the better monitors drainage pipe. Wherein the outer terminal surface of touch panel inlays and is equipped with a plurality of balls, reduces the frictional force between touch panel and the drainage pipe, avoids taking place the card phenomenon of dying between it.
3. The utility model discloses well slider is connected with the piece of polishing with the contact of drainage pipe lateral wall through second spring telescopic link, when the slider slides on circular guide rail, utilizes the piece of polishing to come to polish to drainage pipe's surface and removes dust, avoids having the protrusion to cause the damage to test probe.
4. The utility model discloses well circular guide's the outside is equipped with along the first tooth that circular guide circumference distributes, be equipped with on the live-rollers with first tooth meshing's second tooth, first tooth of mutual complex and second tooth have played skid-proof effect, avoid taking place the idle running phenomenon of skidding between live-rollers and the circular guide.
5. The utility model provides a one of them be connected with flexible handle bar on the hemicycle body, the flexible handle bar of accessible promotes the pipe sleeve and monitors along drainage pipe marcing ahead.
6. The utility model provides a be equipped with a plurality of pipeline supporting mechanism that are the annular and distribute on the telescopic inner wall of pipeline, pipeline supporting mechanism is including setting up the third spring telescopic link on the semi-circular inner wall, and the outer tip of third spring telescopic link is equipped with the gyro wheel, has played the effect of supporting the pipeline sleeve, is convenient for make the pipeline sleeve remove along drainage pipe simultaneously again.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic structural view of a circular guide rail;
FIG. 3 is an enlarged view of a portion of FIG. 1 at A;
FIG. 4 is a schematic view of a structure of a touch panel;
fig. 5 is a schematic structural view of the slide mechanism.
1. An ultrasonic flaw detector; 2. a conduit sleeve; 3. a hemicyclic body; 4. an arc-shaped guide rail; 5. a circular guide rail; 6. a sliding mechanism; 7. a slider; 8. a rotating roller; 9. a limiting ring strip; 10. a ring groove; 11. detecting a probe; 12. a driven gear; 13. a driving gear; 14. a servo motor; 15. A connecting frame; 16. a first spring telescopic rod; 17. a touch plate; 18. a groove; 19. a tension spring; 20. a ball bearing; 21. a second spring telescopic rod; 22. grinding the sheets; 23. a first tooth; 24. a second tooth; 25. a telescopic handle; 26. a third spring telescopic rod; 27. and a roller.
Detailed Description
The following description is made with reference to the accompanying drawings and examples, but not to be construed as limiting the invention.
Example (b): a building drainage pipeline tightness monitoring device is shown in figures 1-5 and comprises an ultrasonic flaw detector 1 and a pipeline sleeve 2 sleeved on a drainage pipeline, wherein the pipeline sleeve 2 consists of two half-ring bodies 3 which are detachably connected, the front ends of the half-ring bodies 3 are provided with arc-shaped guide rails 4 which are butted, the two arc-shaped guide rails 4 are combined to form a circular guide rail 5, and the circular guide rail 5 is connected with a sliding block 7 through a sliding mechanism 6; slide mechanism 6 is including setting up the live-rollers 8 that just are located the inside and outside both sides of circular guide 5 on slider 7, the outside of circular guide 5 is equipped with to convex spacing ring 9, be equipped with on the live-rollers 8 with spacing ring 9 complex annular 10, be equipped with the test probe 11 of being connected with ultrasonic flaw detector 1 on the inside wall of slider 7, the axle head of live-rollers 8 is equipped with driven gear 12, be equipped with on the slider 7 with driven gear 12 meshed driving gear 13, be equipped with servo motor 14 on the slider 7, servo motor 14's output shaft and driving gear 13's axle end connection. Through setting up the pipeline sleeve 2 that comprises two dismantlement hemizonids 3, assemble pipeline sleeve 2 and make it cover on the drainage pipe that needs the monitoring when using, wherein, the front end of hemizonid 3 is equipped with the arc guide rail 4 of butt joint, and two arc guide rail 4 combinations form circular guide rail 5, are connected with slider 7 through slide mechanism 6 on the circular guide rail 5, be equipped with the test probe 11 of being connected with ultrasonic flaw detector 1 on the inside wall of slider 7, wherein, slide mechanism 6 includes setting up on slider 7 and lie in the live-rollers 8 of the inside and outside both sides of circular guide rail 5, the outside of circular guide rail 5 is equipped with to convex spacing ring 9, be equipped with on live-rollers 8 with spacing ring 9 complex annular 10, accessible servo motor 14 drive live-rollers 8 rotates when using, and then drive slider 7 along circular guide rail 5 motion, the slider 7 that removes then drives test probe 11 and makes circular motion along drainage pipe, carries out omnidirectional detection to drainage pipe, utilizes ultrasonic flaw detector 1 to come to detect a flaw to drainage pipe's surface weld seam, compares monitoring effect more with the naked eye to have the characteristics of easily operating.
The detection probe 11 is connected with the sliding block 7 through a connecting frame 15, the connecting frame 15 comprises a first spring telescopic rod 16 arranged on the side wall of the sliding block 7, a collision plate 17 colliding with the outer wall of the drainage pipeline is arranged at the front end of the first spring telescopic rod 16, a groove 18 is arranged at the outer end part of the collision plate 17, the detection probe 11 is arranged in the groove 18, and a telescopic spring 19 is arranged between the detection probe 11 and the side wall of the groove 18; a plurality of balls 20 are embedded in the outer end face of the abutting plate 17. Under the elastic telescopic action of the first spring telescopic rod 16, the contact plate 17 is tightly abutted to the wall of the drainage pipeline to be monitored, and the detection probe 11 is tightly abutted to the wall of the drainage pipeline to be monitored under the elastic action of the telescopic spring 19, so that the drainage pipeline is better monitored. Wherein, the outer end face of the touch plate 17 is embedded with a plurality of balls 20, which reduces the friction between the touch plate 17 and the drainage pipeline and avoids the phenomenon of locking between the touch plate and the drainage pipeline.
The slider 7 is connected with the piece 22 of polishing with drainage pipe lateral wall contact through second spring telescopic link 21, utilizes the piece 22 of polishing to come to polish the dust removal to drainage pipe's surface, avoids having the bulge to cause the damage to detection probe 11.
The outside of circular guide 5 is equipped with along the first tooth 23 of circular guide 5 circumference distribution, be equipped with the second tooth 24 with first tooth 23 meshing on the live-rollers 8, first tooth 23 of mutual complex and second tooth 24 have played skid-proof effect, avoid taking place the idle running phenomenon of skidding between live-rollers 8 and circular guide 5.
One of them be connected with flexible handle bar 25 on the hemicycle body 3, the flexible handle bar 25 of accessible promotes pipeline sleeve 2 and moves ahead along drainage pipe and monitors.
Be equipped with a plurality of pipeline supporting mechanism that are the annular and distribute on the inner wall of pipeline sleeve 2, pipeline supporting mechanism is including setting up third spring telescopic link 26 on the inner wall of hemizonid 3, and the outer tip of third spring telescopic link 26 is equipped with gyro wheel 27, has played the effect of supporting pipeline sleeve 2, is convenient for make pipeline sleeve 2 remove along drainage pipe simultaneously again.

Claims (7)

1. The utility model provides a building drainage pipe leakproofness monitoring devices, establishes pipeline sleeve (2) on drainage pipe including ultrasonic flaw detector (1) and cover, its characterized in that: the pipeline sleeve (2) is composed of two detachably connected semi-ring bodies (3), the front ends of the semi-ring bodies (3) are provided with butted arc-shaped guide rails (4), the two arc-shaped guide rails (4) are combined to form a circular guide rail (5), and the circular guide rail (5) is connected with a sliding block (7) through a sliding mechanism (6); slide mechanism (6) are including setting up on slider (7) and being located live-rollers (8) of the inside and outside both sides of circular guide rail (5), the outside of circular guide rail (5) is equipped with to toward convex spacing ring (9), be equipped with on live-rollers (8) with spacing ring (9) complex annular (10), be equipped with on the inside wall of slider (7) and detect probe (11) of being connected with ultrasonic flaw detector (1), the axle head of live-rollers (8) is equipped with driven gear (12), be equipped with on slider (7) with driven gear (12) meshed driving gear (13), be equipped with servo motor (14) on slider (7), the output shaft of servo motor (14) and the end-to-end connection of driving gear (13).
2. The building drainage pipe tightness monitoring device according to claim 1, wherein: the detection probe (11) is connected with the sliding block (7) through a connecting frame (15), the connecting frame (15) comprises a first spring telescopic rod (16) arranged on the side wall of the sliding block (7), a contact plate (17) abutted against the outer wall of the drainage pipeline is arranged at the front end of the first spring telescopic rod (16), a groove (18) is formed in the outer end portion of the contact plate (17), and the detection probe (11) is arranged in the groove (18) and is provided with a telescopic spring (19) between the side wall of the groove (18).
3. The building drainage pipe tightness monitoring device according to claim 2, wherein: the outer end face of the abutting plate (17) is embedded with a plurality of balls (20).
4. The building drainage pipe tightness monitoring device according to claim 3, wherein: the sliding block (7) is connected with a polishing piece (22) which is in contact with the outer side wall of the drainage pipeline through a second spring telescopic rod (21).
5. The building drainage pipe tightness monitoring device according to claim 1, wherein: the outer side of the circular guide rail (5) is provided with first teeth (23) distributed along the circumferential direction of the circular guide rail (5), and the rotating roller (8) is provided with second teeth (24) meshed with the first teeth (23).
6. The building drainage pipe tightness monitoring device according to claim 1, wherein: one of the semi-ring bodies (3) is connected with a telescopic handle bar (25).
7. The building drainage pipe tightness monitoring device according to claim 1, wherein: the inner wall of the pipeline sleeve (2) is provided with a plurality of pipeline supporting mechanisms distributed in an annular mode, each pipeline supporting mechanism comprises a third spring telescopic rod (26) arranged on the inner wall of the corresponding semi-ring body (3), and the outer end portion of each third spring telescopic rod (26) is provided with a roller (27).
CN201921515648.7U 2019-09-12 2019-09-12 Building drainage pipe leakproofness monitoring devices Expired - Fee Related CN210662350U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921515648.7U CN210662350U (en) 2019-09-12 2019-09-12 Building drainage pipe leakproofness monitoring devices

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921515648.7U CN210662350U (en) 2019-09-12 2019-09-12 Building drainage pipe leakproofness monitoring devices

Publications (1)

Publication Number Publication Date
CN210662350U true CN210662350U (en) 2020-06-02

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ID=70820560

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Application Number Title Priority Date Filing Date
CN201921515648.7U Expired - Fee Related CN210662350U (en) 2019-09-12 2019-09-12 Building drainage pipe leakproofness monitoring devices

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112275841A (en) * 2020-11-19 2021-01-29 浙江义腾特种钢管有限公司 Full-automatic steel pipe straightening device
CN113775941A (en) * 2021-08-28 2021-12-10 周攀 Municipal administration drain pipe leak hunting is with rail mounted intelligence inspection device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112275841A (en) * 2020-11-19 2021-01-29 浙江义腾特种钢管有限公司 Full-automatic steel pipe straightening device
CN113775941A (en) * 2021-08-28 2021-12-10 周攀 Municipal administration drain pipe leak hunting is with rail mounted intelligence inspection device

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200602

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